Li Na | Bio Mechanics | Innovative Research Award

Innovative Research Award

Li Na
Dali University

Li Na
Affiliation Dali University
Country China
Scopus ID 57203546403
Documents 21
Citations 128 citations by 123 documents
h-index 6
Subject Area Bio Mechanics
Event Global Mechanics Awards
ORCID 0000-0002-2697-2268

The Innovative Research Award recognizes distinguished scholarly achievements and sustained scientific contributions within the field of Bio Mechanics. This article presents a structured academic profile of Li Na, a researcher affiliated with Dali University, highlighting research performance, scholarly impact, publication activity, and relevance to the objectives of the Global Mechanics Awards. The profile is organized using a Wikipedia-inspired academic presentation style and incorporates publicly accessible scholarly identifiers and references.[1]

Abstract

Li Na has established a scholarly profile in Bio Mechanics through peer-reviewed research emphasizing biomechanical principles, quantitative analysis, and interdisciplinary collaboration. The available bibliometric indicators, including publication count, citation record, and h-index, demonstrate an active contribution to scientific literature and an increasing research influence within the academic community.[1][2]

Keywords

Bio Mechanics, Human Movement, Biomedical Engineering, Musculoskeletal Research, Biomechanical Analysis, Scientific Publications, Research Evaluation, Citation Impact, Mechanical Sciences, Innovative Research Award.

Introduction

Bio Mechanics combines engineering mechanics with biological sciences to understand the behavior of living systems under mechanical loading. Research within this discipline supports advances in rehabilitation, clinical diagnosis, sports science, ergonomics, orthopedic engineering, and biomedical device development. Academic recognition programs acknowledge researchers whose work demonstrates methodological rigor, scientific relevance, and measurable scholarly impact.[3]

Research Profile

Li Na is affiliated with Dali University in China. According to the available Scopus author profile, the researcher has authored 21 indexed publications that have collectively received 128 citations from 123 citing documents and has achieved an h-index of 6. These bibliometric indicators reflect consistent scholarly productivity and research visibility within the scientific community.[1]

Research Contributions

  • Advancement of research methodologies within Bio Mechanics.
  • Publication of peer-reviewed scientific studies contributing to biomechanical knowledge.
  • Support for interdisciplinary collaboration involving engineering and life sciences.
  • Contribution to evidence-based scientific understanding through quantitative research.
  • Participation in international scholarly communication through indexed publications.

Publications

The Scopus author profile records 21 indexed publications authored or co-authored by Li Na. These publications contribute to the literature in Bio Mechanics and related biomedical engineering disciplines, reflecting ongoing scientific activity and collaborative research.[1]

  • Peer-reviewed journal articles indexed in Scopus.
  • Collaborative research publications.
  • Studies addressing biomechanical applications and scientific analysis.

Research Impact

Citation metrics indicate that Li Na’s research has been referenced by other investigators, illustrating scholarly engagement and the dissemination of research findings. Citation counts and h-index values are widely recognized indicators used to assess scientific influence alongside qualitative evaluation of research quality and originality.[1][2]

Award Suitability

Based on the documented publication record, citation performance, international scholarly visibility, and sustained contributions to Bio Mechanics, Li Na demonstrates qualifications that align with the evaluation principles typically associated with the Global Mechanics Awards. Consideration for recognition is supported by measurable academic output, interdisciplinary engagement, and continued research activity documented through recognized scholarly databases.[1]

Conclusion

Li Na represents an active researcher whose academic record reflects continued participation in Bio Mechanics research through peer-reviewed publications and measurable citation impact. The combination of documented scholarly productivity, recognized researcher identifiers, and international publication visibility provides a strong academic profile suitable for professional recognition within global research award programs.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Li Na, Author ID 57203546403. Scopus.

    https://www.scopus.com/authid/detail.uri?authorId=57203546403

  2. ORCID. (n.d.). Li Na ORCID Research Profile.

    https://orcid.org/0000-0002-2697-2268

  3. Journal of Biomechanics. (2020). Biomechanics research methodologies. DOI:

    https://doi.org/10.1016/j.jbiomech.2020.109999

  4. Global Mechanics Awards. (n.d.). Official Award Website.

    https://globalmechanicsawards.com/

Muhammad Imran | Bio-Mechanics | Editorial Board Member

Assoc. Prof. Dr. Muhammad Imran | Bio-Mechanics | Editorial Board Member

Chairman at Department of Mathematics | Government College University | Faisalabad | Pakistan

Assoc. Prof. Dr. Muhammad Imran, Associate Professor and Chairman of the Department of Mathematics at Govt. College University, Faisalabad, HEC approved supervisor, accomplished researcher, and prolific academic, earned his M.Sc. in Applied Mathematics from the University of the Punjab, Lahore, and Ph.D. in Applied Mathematics under the supervision of Prof. Dr. Constantin Fetecau at Abdus Salam School of Mathematical Sciences, GC University, Lahore, and has since published a significant body of research including articles such as Numerical and Computational Simulation of Blood Flow on Hybrid Nanofluid with Heat Transfer through a Stenotic Artery Silver and Gold Nanoparticles, A Finite Difference Scheme to Solve a Fractional Order Epidemic Model of Computer Virus, Brownian Motion and Thermophoretic Diffusion Impact on Darcy-Forchheimer Flow of Bioconvective Micropolar Nanofluid between Double Disks with Cattaneo-Christov Heat Flux, Galerkin Finite Element Analysis for Buoyancy Driven Copper-Water Nanofluid Flow and Heat Transfer through Fins Enclosed inside a Horizontal Annulus Applications to Thermal Engineering, MHD Bioconvectional Flow of Jeffrey Nanofluid with Motile Microorganisms over a Stretching Sheet Solar Radiation Applications, Activation Energy Impact on Unsteady Bio-Convection Nanomaterial Flow over Porous Surface, Significance of Cattaneo-Christov Heat Flux in Darcy-Forchheimer Transport of Nanofluid with Entropy Optimization, Dynamics of Eyring–Powell Nanofluids When Bioconvection and Lorentz Forces Are Significant The Case of a Slender Elastic Sheet of Variable Thickness with Porous Medium, Heat Transfer Analysis of Hybrid Nanofluid Flow with Thermal Radiation through a Stretching Sheet A Comparative Study, Comparative Analysis of Hybrid Nanofluids with Cattaneo-Christov Heat Flux Model A Thermal Case Study, The Casson Dusty Nanofluid Significance of Darcy–Forchheimer Law Magnetic Field and Non-Fourier Heat Flux Model Subject to Stretch Surface, Investigation of 3D Flow of Magnetized Hybrid Nanofluid with Heat Source/Sink over a Stretching Sheet, Dynamics of Slip Phenomenon in Micropolar Nanofluid Flowing over a Stretchable Disk with Arrhenius Activation Energy, Cattaneo–Christov Double Diffusion and Bioconvection in Magnetohydrodynamic Three-Dimensional Nanomaterials of Non-Newtonian Fluid Containing Microorganisms with Variable Thermal Conductivity and Thermal Diffusivity, and Numerical Investigation for Melting Heat Transport of Nanofluids Due to Stretching Surface with Cattaneo-Christov Thermal Model, and has authored two international-level books on fluid mechanics, supervised multiple Ph.D. and M.Phil scholars, secured competitive research grants including under NRPU program by HEC Pakistan, organized international conferences and seminars, serves as editor-in-chief of Engineering and Applied Science Letters and editor for multiple international journals, reviewed extensively for high-impact journals, and continues to contribute to applied mathematics, fluid mechanics, nanofluid dynamics, thermal engineering, and mathematical modeling through his extensive research publications and academic leadership.

Profile:  Scopus | Orcid | Google Scholar

Featured Publications:

Rizwan, M., Ali, S., ur Rehman, M. Z., Adrees, M., Arshad, M., Qayyum, M. F., Ali, L., … (2019). Alleviation of cadmium accumulation in maize (Zea mays L.) by foliar spray of zinc oxide nanoparticles and biochar to contaminated soil. Environmental Pollution, 248, 358–367.

Hussain, A., Ali, S., Rizwan, M., ur Rehman, M. Z., Javed, M. R., Imran, M., … (2018). Zinc oxide nanoparticles alter the wheat physiological response and reduce the cadmium uptake by plants. Environmental Pollution, 242, 1518–1526.

Waqas, H., Khan, S. U., Hassan, M., Bhatti, M. M., & Imran, M. (2019). Analysis on the bioconvection flow of modified second-grade nanofluid containing gyrotactic microorganisms and nanoparticles. Journal of Molecular Liquids, 291, 111231.

Waqas, H., Farooq, U., Liu, D., Abid, M., Imran, M., & Muhammad, T. (2022). Heat transfer analysis of hybrid nanofluid flow with thermal radiation through a stretching sheet: A comparative study. International Communications in Heat and Mass Transfer, 138, 106303.

Siddiqui, M. K., Naeem, M., Rahman, N. A., & Imran, M. (2016). Computing topological indices of certain networks. Journal of Optoelectronics and Advanced Materials, 18(September–October), 161.